Analysis of the Technological and Economic Expediency of Using Additive Technologies in Manufacturing Ceramic Parts

被引:0
|
作者
M. K. Romanov
L. I. Zhuravleva
机构
[1] Urals Electromechanical Plant,
来源
Glass and Ceramics | 2020年 / 76卷
关键词
additive technology (AT); 3D-printing; 3D-model; slip; slip technology (ST); metal-ceramic units (MCU); VK94-1 ceramic; suspension; photopolymer; optical system; projector; good product yield;
D O I
暂无
中图分类号
学科分类号
摘要
The experience gained in manufacturing complex ceramic parts using additive technology LCM (Lithography-based Ceramic Manufacturing) and an analysis of the economic expediency of using this technology in serial and experimental manufacturing of ceramic parts as compared with slip casting technology are presented. The results are of interest in developing and manufacturing new, complex, experimental, ceramic parts and selecting a technology and equipment for serial production.
引用
收藏
页码:328 / 333
页数:5
相关论文
共 50 条
  • [1] Analysis of the Technological and Economic Expediency of Using Additive Technologies in Manufacturing Ceramic Parts
    Romanov, M. K.
    Zhuravleva, L. I.
    GLASS AND CERAMICS, 2020, 76 (9-10) : 328 - 333
  • [2] Technological and Economic Analysis of Logistic Activities in Interior Parts Manufacturing
    Kavka, Libor
    Dockalikova, Iveta
    Cujan, Zdenek
    Fedorko, Gabriel
    ADVANCES IN SCIENCE AND TECHNOLOGY-RESEARCH JOURNAL, 2020, 14 (03) : 204 - 212
  • [3] Study on Polishing Technologies for Additive Manufacturing Parts
    Wan, Zhiqiang
    Hong, Patrick Teo Hiu
    Fong, Go Tze
    Tayier, Walisijiang
    Xia, Hua
    JURNAL KEJURUTERAAN, 2025, 37 (01): : 13 - 23
  • [4] Mechanical Design of Viscoelastic Parts Fabricated Using Additive Manufacturing Technologies
    Manzhirov, Alexander V.
    WORLD CONGRESS ON ENGINEERING, WCE 2015, VOL II, 2015, : 710 - 714
  • [5] Technological Distortions of Topology Optimized Parts in Additive Manufacturing
    Maksimov P.V.
    Muratov K.R.
    Ablyaz T.R.
    Fetisov K.V.
    Permyakov M.S.
    Russian Engineering Research, 2021, 41 (05) : 469 - 471
  • [6] The quality systems of additive technologies for aerospace parts manufacturing
    Kokareva, Victoria
    Smelov, Vitaliy
    Zvyagincev, Maksim
    NEXO REVISTA CIENTIFICA, 2023, 36 (03): : 331 - 343
  • [7] Design and Technological Solutions for Additive Manufacturing of Parts in the Volume of Material
    Rakov, D. L.
    Sukhorukov, R. Yu.
    JOURNAL OF MACHINERY MANUFACTURE AND RELIABILITY, 2024, 53 (04) : 346 - 350
  • [8] Environmental and Economic Analysis of FDM, SLS and MJF Additive Manufacturing Technologies
    Tagliaferri, Vincenzo
    Trovalusci, Federica
    Guarino, Stefano
    Venettacci, Simone
    MATERIALS, 2019, 12 (24)
  • [9] Stereolithographic Additive Manufacturing of High Precision Glass Ceramic Parts
    Schoenherr, Julia Anna
    Baumgartner, Sonja
    Hartmann, Malte
    Stampfl, Juergen
    MATERIALS, 2020, 13 (07)
  • [10] DLP based light engines for additive manufacturing of ceramic parts
    Hatzenbichler, M.
    Geppert, M.
    Gruber, S.
    Ipp, E.
    Almedal, R.
    Stampfl, J.
    EMERGING DIGITAL MICROMIRROR DEVICE BASED SYSTEMS AND APPLICATIONS IV, 2012, 8254